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Tat-GluR6-9c通过核途径和非核途径对大鼠海马中由红藻氨酸诱导的神经元死亡的神经保护作用。

Neuroprotection of Tat-GluR6-9c against neuronal death induced by kainate in rat hippocampus via nuclear and non-nuclear pathways.

作者信息

Liu Xiao-Mei, Pei Dong-Sheng, Guan Qiu-Hua, Sun Ya-Feng, Wang Xiao-Tian, Zhang Qing-Xiu, Zhang Guang-Yi

机构信息

Research Center for Biochemistry and Molecular Biology, Xuzhou Medical College, Xuzhou, Jiangsu 221002, China.

Research Center for Biochemistry and Molecular Biology, Xuzhou Medical College, Xuzhou, Jiangsu 221002, China.

出版信息

J Biol Chem. 2006 Jun 23;281(25):17432-17445. doi: 10.1074/jbc.M513490200. Epub 2006 Apr 19.

Abstract

Previous studies have suggested that glutamate receptor 6 (GluR6) subunit- and JNK-deficient mice can resist kainate-induced epileptic seizure and neuronal toxicity (Yang, D. D., Kuan, C.-Y., Whitmarsh, A. J., Rinoćn, M., Zheng, T. S., Davis, R. J., Rakic, P., and Flavell, R. A. (1997) Nature 389, 865-870; Mulle, C., Seiler, A., Perez-Otano, I., Dickinson-Anson, H., Castillo, P. E., Bureau, I., Maron, C., Gage, F. H., Mann, J. R., Bettler, B., and Heinemmann, S. F. (1998) Nature 392, 601-605). In this study, we show that kainate can enhance the assembly of the GluR6-PSD95-MLK3 module and facilitate the phosphorylation of JNK in rat hippocampal CA1 and CA3/dentate gyrus (DG) subfields. More important, a peptide containing the Tat protein transduction sequence (Tat-GluR6-9c) perturbed the assembly of the GluR6-PSD95-MLK3 signaling module and suppressed the activation of MLK3, MKK7, and JNK. As a result, the inhibition of JNK activation by Tat-GluR6-9c diminished the phosphorylation of the transcription factor c-Jun and down-regulated Fas ligand expression in hippocampal CA1 and CA3/DG regions. The inhibition of JNK activation by Tat-Glur6-9c attenuated Bax translocation, the release of cytochrome c, and the activation of caspase-3 in CA1 and CA3/DG subfields. Furthermore, kainate-induced neuronal loss in hippocampal CA1 and CA3 subregions was prevented by intracerebroventricular injection of Tat-Glur6 - 9c. Taken together, our findings strongly suggest that the GluR6-PSD95-MLK3 signaling module mediates activation of the nuclear and non-nuclear pathways of JNK, which is involved in brain injury induced by kainate. Tat-GluR6-9c, the peptide we constructed, gives new insight into seizure therapy.

摘要

先前的研究表明,谷氨酸受体6(GluR6)亚基和JNK缺陷型小鼠能够抵抗海藻酸诱导的癫痫发作和神经元毒性(Yang, D. D., Kuan, C.-Y., Whitmarsh, A. J., Rinoćn, M., Zheng, T. S., Davis, R. J., Rakic, P., and Flavell, R. A. (1997) 《自然》389, 865 - 870;Mulle, C., Seiler, A., Perez-Otano, I., Dickinson-Anson, H., Castillo, P. E., Bureau, I., Maron, C., Gage, F. H., Mann, J. R., Bettler, B., and Heinemmann, S. F. (1998) 《自然》392, 601 - 605)。在本研究中,我们发现海藻酸能够增强GluR6 - PSD95 - MLK3模块的组装,并促进大鼠海马CA1区和CA3/齿状回(DG)亚区中JNK的磷酸化。更重要的是,一种含有Tat蛋白转导序列的肽(Tat - GluR6 - 9c)扰乱了GluR6 - PSD95 - MLK3信号模块的组装,并抑制了MLK3、MKK7和JNK的激活。结果,Tat - GluR6 - 9c对JNK激活的抑制作用减弱了转录因子c - Jun的磷酸化,并下调了海马CA1区和CA3/DG区中Fas配体的表达。Tat - GluR6 - 9c对JNK激活的抑制作用减弱了CA1区和CA3/DG亚区中Bax的易位、细胞色素c的释放以及caspase - 3的激活。此外,脑室内注射Tat - GluR6 - 9c可预防海藻酸诱导的海马CA1区和CA3区神经元丢失。综上所述,我们的研究结果强烈表明,GluR6 - PSD95 - MLK3信号模块介导了JNK核内和非核内途径的激活,这与海藻酸诱导的脑损伤有关。我们构建的肽Tat - GluR6 - 9c为癫痫治疗提供了新的见解。

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